دانلود رایگان مقاله انگلیسی + خرید ترجمه فارسی | |
عنوان فارسی مقاله: |
پلیمریزاسیون مونومرهای مایع یونی در دمای اتاق با تابش پرتوی الکترونی با هدف ساخت ساختارهای میکروپلیمر/ نانوپلیمر سه بعدی |
عنوان انگلیسی مقاله: |
Polymerization of Room-Temperature Ionic Liquid Monomers by Electron Beam Irradiation with the Aim of Fabricating ThreeDimensional Micropolymer/Nanopolymer Structures |
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مشخصات مقاله انگلیسی (PDF) | |
سال انتشار | 2014 |
تعداد صفحات مقاله انگلیسی | 9 صفحه با فرمت pdf |
رشته های مرتبط با این مقاله | مهندسی پلیمر |
گرایش های مرتبط با این مقاله | پلیمریزاسیون و نانو فناوری پلیمر |
چاپ شده در مجله (ژورنال) | لنگمیر – Langmuir |
رفرنس | دارد ✓ |
کد محصول | F1129 |
نشریه | ACS |
مشخصات و وضعیت ترجمه فارسی این مقاله | |
وضعیت ترجمه | انجام شده و آماده دانلود |
تعداد صفحات ترجمه تایپ شده با فرمت ورد با قابلیت ویرایش | 6 صفحه با فونت 14 B Nazanin |
ترجمه عناوین تصاویر و جداول | ترجمه شده است ✓ |
ترجمه متون داخل تصاویر | ترجمه شده است ☓ |
ترجمه متون داخل جداول | ترجمه نشده است ☓ |
درج تصاویر در فایل ترجمه | درج شده است ✓ |
درج جداول در فایل ترجمه | درج نشده است ☓ |
کیفیت ترجمه | کیفیت ترجمه این مقاله متوسط میباشد |
توضیحات | دو صفحه اول مقاله ترجمه شده است |
فهرست مطالب |
چکیده مقدمه بخش آزمایشی نتایج ساخت ساختارهای سه بعدی با تابش EB روی RTIL نوع آلیل |
بخشی از ترجمه |
چکیده |
بخشی از مقاله انگلیسی |
Abstract A novel method for fabricating microsized and nanosized polymer structures from a room-temperature ionic liquid (RTIL) on a Si substrate was developed by the patterned irradiation of an electron beam (EB). An extremely low vapor pressure of the RTIL, 1-allyl-3-ethylimidazolium bis((trifluoromethane)sulfonyl)amide, allows it to be introduced into the high-vacuum chamber of an electron beam apparatus to conduct a radiation-induced polymerization in the nanoregion. We prepared various three-dimensional (3D) micro/nanopolymer structures having high aspect ratios of up to 5 with a resolution of sub-100 nm. In addition, the effects of the irradiation dose and beam current on the physicochemical properties of the deposited polymers were investigated by recording the FT-IR spectra and Young’s modulus. Interestingly, the overall shapes of the obtained structures were different from those prepared in our recent study using a focused ion beam (FIB) even if the samples were irradiated in a similar manner. This may be due to the different transmission between the two types of beams as discussed on the basis of the theoretical calculations of the quantum beam trajectories. Perceptions obtained in this study provide facile preparation procedures for the micro/ nanostructures. 1. Introduction Room-temperature ionic liquids (RTILs), which are liquid salts consisting only of cations and anions, have fascinated many researchers in various fields because of their unique physicochemical properties such as incombustibility, high ionic conductivity, high thermal stability, and wide electrochemical window.1−7 Among these properties, the negligible vapor pressure of RTILs is one of the most important features in recent research using RTILs under vacuum conditions.8,9 Our research group developed several new technologies that can be categorized as RTIL-vacuum technology.10,11 For example, we have developed an in situ scanning electron microscopy (SEM) technique to investigate electrochemical reactions in RTIL concurrently with the polarization of electrodes.12,13 In a series of investigations, we further noticed that certain types of chemical reactions, i.e., the reduction of metal ions, are induced by electron beam irradiation.14,15 The first finding was that gold particles were produced in an RTIL that contained gold ions during the observation of the RTIL by SEM. On the basis of these perceptions, we have established a completely new method to fabricate micro/nanosized polymer structures by drawing arbitrary patterns on a polymerizable RTIL, 1-allyl-3-ethylimidazolium bis((trifluoromethane)- sulfonyl)amide ([AllylEtIm][Tf2N], Scheme 1), with a focused ion beam (FIB) instrument.16 In this technique, we succeeded in fabricating various three-dimensional (3D) microscopic polymer structures that are difficult to build using conventional FIB techniques. The fabrication of complicated 3D structures was achieved by a distinctive formation mechanism that resembles the mechanism of 3D printers. The key point in this method is that the polymerization takes place at the RTIL/ vacuum interface and that the reorganization of the liquid meniscus raises the reaction position for the polymer structure to grow higher than the original thickness of the RTIL layer. |
دانلود رایگان مقاله انگلیسی + خرید ترجمه فارسی | |
عنوان فارسی مقاله: |
پلیمریزاسیون مونومرهای مایع یونی در دمای اتاق با تابش پرتوی الکترونی با هدف ساخت ساختارهای میکروپلیمر/ نانوپلیمر سه بعدی |
عنوان انگلیسی مقاله: |
Polymerization of Room-Temperature Ionic Liquid Monomers by Electron Beam Irradiation with the Aim of Fabricating ThreeDimensional Micropolymer/Nanopolymer Structures |
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